Stoddart Institute of Molecular Science, Department of Chemistry, Zhejiang University, Hangzhou 310058, P. R. China.
Department of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, P. R. China.
J Am Chem Soc. 2023 Jan 11;145(1):667-675. doi: 10.1021/jacs.2c11618. Epub 2022 Dec 27.
Variable stoichiometry co-crystals are important in solid-state supramolecular chemistry as they allow studies of structure-property relationships while permitting the synthesis of new scaffolds using identical synthons. In this work, we extend the concept of variable stoichiometry co-crystals into the realm of pillararene chemistry and show that this permits the rational construction of a diverse set of supramolecular structures in the solid state. Specifically, we report a series of variable stoichiometry co-crystals based on pillar[]arenes and tetracyanobenzene () and show that the combination of in-cavity complexation by pillar[]arenes ( = 5,6) and outside binding with allows several types of co-crystals with different self-assembled superstructures to be isolated. The variable stoichiometry co-crystals of this study display different solid-state physicochemical properties, including colors and luminescence features. Among these pillar[]arene-based co-crystals, we discovered unique crystallographic architectures wherein two sets of individual host-guest complexes co-exist in the solid state. These mixed co-crystal systems allow for vapochromic-based detection of -bromoalkanes. This work highlights a new strategy for the construction of self-assembled superstructures in the solid state and for tuning their intrinsic characteristics, including their luminescent and substrate-responsive features.
变组成计量共晶在固态超分子化学中很重要,因为它们允许在研究结构-性质关系的同时,使用相同的缩合剂合成新的支架。在这项工作中,我们将变组成计量共晶的概念扩展到柱芳烃化学领域,并表明这允许在固态中合理构建多种超分子结构。具体来说,我们报告了一系列基于柱芳烃和四氰基苯()的变组成计量共晶,并表明柱芳烃(= 5,6)腔内络合与外部与结合允许分离具有不同自组装超结构的几种类型的共晶。本研究的变组成计量共晶显示出不同的固态物理化学性质,包括颜色和发光特性。在这些基于柱芳烃的共晶中,我们发现了独特的晶体结构,其中两组单独的主客体配合物在固态中共存。这些混合共晶体系允许基于蒸气变色的检测 - 溴代烷烃。这项工作强调了一种在固态中构建自组装超结构的新策略,并调整其固有特性,包括发光和对基底响应的特性。